The rope shaken more rapidly will have a shorter wavelength and more energy. When a rope is shook rapidly, it creates shorter waves, which results in a shorter wavelength. Additionally, increased frequency in shaking the rope results in more vibrations and therefore more energy being transferred to the rope.
When the time is shorter, the power used remains the same. Power is calculated as the rate at which energy is consumed, so if the time taken to consume that energy is shortened, the power consumption will be higher during that shorter time period.
The wavelength of a mechanical wave in a medium is affected by the speed of the wave in that medium and its frequency. As the speed increases, the wavelength decreases, and vice versa. Higher frequencies also result in shorter wavelengths.
Wavelength is inversely proportional to frequency, but it is directly proportional to the velocity of propagation. Since sound propagates through air much more slowly than EM waves propagate through the atmosphere or the vacuum of space, the wavelengths of sound waves are much smaller for identical frequencies.
Increase
Temperature is a measure of the average kinetic energy of the particles in a substance. When particles move rapidly, they generate more heat energy, which we perceive as "hot." On the other hand, when particles move slowly, they generate less heat energy, which we perceive as "cold."
You should shake the end of the rope rapidly to make the wavelength shorter. Increasing the frequency of the wave by shaking it rapidly will decrease the distance between consecutive crests, thus shortening the wavelength.
Rapidly moving comets have more kinetic energy compared to slowly moving ones. Kinetic energy is the energy of motion, and it increases with an object's velocity.
When the time is shorter, the power used remains the same. Power is calculated as the rate at which energy is consumed, so if the time taken to consume that energy is shortened, the power consumption will be higher during that shorter time period.
The wavelength of a mechanical wave in a medium is affected by the speed of the wave in that medium and its frequency. As the speed increases, the wavelength decreases, and vice versa. Higher frequencies also result in shorter wavelengths.
Rapidly
Normal dispersion occurs where shorter wavelengths travel slower than longer wavelengths. Anomalous dispersion occurs when shorter wavelengths travel faster than longer wavelengths.The zero dispersion point for optic fibres is around 1550 nm, which is why most communications systems use this wavelength.
slowly
slowly
he thought the revolved slowly
Wavelength is inversely proportional to frequency, but it is directly proportional to the velocity of propagation. Since sound propagates through air much more slowly than EM waves propagate through the atmosphere or the vacuum of space, the wavelengths of sound waves are much smaller for identical frequencies.
The opposite would be slowly, or gradually.
when you get older, the cartilage in between your spine slowly goes away and you become shorter.